表面技术
錶麵技術
표면기술
SURFACE TECHNOLOGY
2014年
4期
74-77,123
,共5页
化学镀%Ni-P-荧光粉复合镀%搅拌%荧光性能
化學鍍%Ni-P-熒光粉複閤鍍%攪拌%熒光性能
화학도%Ni-P-형광분복합도%교반%형광성능
electroless plating%Ni-P-phosphor composite coatings%stirring%fluorescence property
目的:以铜合金为基体,采用化学镀技术制备 Ni-P-荧光粉复合镀层。方法在化学镀镍液中加入荧光粉微粒,在不同条件下施镀,并对不同工艺参数下获得的镀层的表面形貌、结构和荧光特性进行研究。结果化学沉积 Ni-P-荧光粉复合镀层的沉积方式为颗粒堆积,镀液中荧光粉的浓度和镀液的 pH值对镀层中荧光粉的含量有影响。荧光粉微粒的加入使得镀层表面色泽变暗,外观较粗糙。对复合镀层进行荧光分析发现,激发光谱在激发波长450~560 nm 范围内存在荧光峰,发射光谱在发射波长420~500 nm 范围内存在荧光峰。结论采用合理的工艺参数可以获得 Ni-P-荧光粉复合镀层,且镀液 pH =5.0时,荧光效果最佳。
目的:以銅閤金為基體,採用化學鍍技術製備 Ni-P-熒光粉複閤鍍層。方法在化學鍍鎳液中加入熒光粉微粒,在不同條件下施鍍,併對不同工藝參數下穫得的鍍層的錶麵形貌、結構和熒光特性進行研究。結果化學沉積 Ni-P-熒光粉複閤鍍層的沉積方式為顆粒堆積,鍍液中熒光粉的濃度和鍍液的 pH值對鍍層中熒光粉的含量有影響。熒光粉微粒的加入使得鍍層錶麵色澤變暗,外觀較粗糙。對複閤鍍層進行熒光分析髮現,激髮光譜在激髮波長450~560 nm 範圍內存在熒光峰,髮射光譜在髮射波長420~500 nm 範圍內存在熒光峰。結論採用閤理的工藝參數可以穫得 Ni-P-熒光粉複閤鍍層,且鍍液 pH =5.0時,熒光效果最佳。
목적:이동합금위기체,채용화학도기술제비 Ni-P-형광분복합도층。방법재화학도얼액중가입형광분미립,재불동조건하시도,병대불동공예삼수하획득적도층적표면형모、결구화형광특성진행연구。결과화학침적 Ni-P-형광분복합도층적침적방식위과립퇴적,도액중형광분적농도화도액적 pH치대도층중형광분적함량유영향。형광분미립적가입사득도층표면색택변암,외관교조조。대복합도층진행형광분석발현,격발광보재격발파장450~560 nm 범위내존재형광봉,발사광보재발사파장420~500 nm 범위내존재형광봉。결론채용합리적공예삼수가이획득 Ni-P-형광분복합도층,차도액 pH =5.0시,형광효과최가。
Objective Ni-P-phosphor composite coatings were prepared on the copper substrate by electroless plating. Methods Under the condition of different plating, fluorescent particles were added into the electroless plating solution. Surface morphology, structure and fluorescence properties under different process parameters were investigated using SEM, XRD and fluorescence spec-trophotometer. Results The results indicated that particle packing was the depositional mode of Ni-P-phosphor powder composite plating. The phosphor concentration and pH in the plating solution influenced the content of phosphor in the coatings. The surface of composite plating was darkened and showed rough appearance compared to that of electroless Ni-P plating because of the addition of phosphor particles. And fluorescence analysis was carried out on the coating, fluorescence peaks were found when the excitation spectra ranged from 450 to 560 nm while the emission spectra ranged from 420 to 500 nm, which was combined to verify the fluo-rescence property of the plating. Conclusion Rational process conditions could result in Ni-P-Phosphor Composite Plating and the optimal fluorescent effect was obtained at pH 5. 0.